TW202202978A - Eye tracking structure, electronic device and smart glasses - Google Patents

Eye tracking structure, electronic device and smart glasses Download PDF

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TW202202978A
TW202202978A TW109123115A TW109123115A TW202202978A TW 202202978 A TW202202978 A TW 202202978A TW 109123115 A TW109123115 A TW 109123115A TW 109123115 A TW109123115 A TW 109123115A TW 202202978 A TW202202978 A TW 202202978A
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micro
eye
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tracking structure
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TWI769480B (en
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王世育
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大陸商業成科技(成都)有限公司
大陸商業成光電(深圳)有限公司
英特盛科技股份有限公司
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    • GPHYSICS
    • G02OPTICS
    • G02BOPTICAL ELEMENTS, SYSTEMS OR APPARATUS
    • G02B27/00Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00
    • G02B27/0093Optical systems or apparatus not provided for by any of the groups G02B1/00 - G02B26/00, G02B30/00 with means for monitoring data relating to the user, e.g. head-tracking, eye-tracking

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Abstract

An embodiment of the present disclosure provides an eye tracking structure. The eye tracking structure includes a transparent substrate, a plurality of infrared micro LEDs arranged in an array on the substrate, a plurality of micro optical sensing elements arranged in an array on the substrate, and a micro integrated circuit. The infrared micro LEDs and the micro optical sensing elements are electrically connected to the micro integrated circuit. The infrared micro LEDs are used to emit infrared light to a user's eyeball, and the micro optical sensing elements are used to sense the infrared light reflected by the user's eyeball and collect an image of the user's eyeball. The integrated circuit is used to determine a rotation position of the user's eyeball according to the image of the user's eyeball. Another embodiment of the present disclosure provides an electronic device and smart glasses.

Description

眼球追蹤結構、電子裝置及智能眼鏡Eye tracking structure, electronic device and smart glasses

本發明涉及顯示技術領域,尤其涉及一種眼球追蹤結構、電子裝置及智能眼鏡。The present invention relates to the field of display technology, and in particular, to an eye tracking structure, an electronic device and smart glasses.

眼球追蹤技術是一種利用機械、電子、光學等各種檢測手段獲取使用者當前“注視方向”的技術。隨著計算機視覺、人工智能技術與數字化技術的迅速發展,眼球追蹤技術已成為當前熱點研究領域,在人機交互領域有著廣泛應用,例如,可應用於虛擬現實、增強現實、車輛輔助駕駛、用戶體驗、認知障礙診斷等複數領域。Eye tracking technology is a technology that uses mechanical, electronic, optical and other detection methods to obtain the user's current "gazing direction". With the rapid development of computer vision, artificial intelligence technology and digital technology, eye tracking technology has become a hot research field and has a wide range of applications in the field of human-computer interaction, such as virtual reality, augmented reality, vehicle assisted driving, user Plural fields such as experience, cognitive impairment diagnosis, etc.

經發明人研究發現,現有的眼球追蹤結構普遍存在光透過率低的缺陷。故,有需要提供一種高透過率的眼球追蹤結構。The inventor's research found that the existing eye-tracking structures generally have the defect of low light transmittance. Therefore, there is a need to provide an eye tracking structure with high transmittance.

本發明一方面提供一種眼球追蹤結構,其包括; 透明的基板; 複數紅外微型LED,陣列排佈於所述基板上; 複數微型光學感測元件,陣列排佈於所述基板上;以及 微型集成電路,設置於所述基板上,所述紅外微型LED與所述微型光學感測元件電性連接所述微型集成電路; 其中,所述紅外微型LED用於向使用者的眼球發射紅外光,所述微型光學感測元件用於感測被使用者的眼球反射回的紅外光並採集使用者的眼球的圖像,所述微型集成電路用於根據所述使用者的眼球的圖像確定使用者的眼球轉動的位置。One aspect of the present invention provides an eye tracking structure, comprising: transparent substrate; a plurality of infrared micro-LEDs arranged in an array on the substrate; a plurality of miniature optical sensing elements, arrayed on the substrate; and a micro-integrated circuit, disposed on the substrate, the infrared micro-LED and the micro-optical sensing element are electrically connected to the micro-integrated circuit; Wherein, the infrared micro LED is used to emit infrared light to the eyeball of the user, and the micro optical sensing element is used to sense the infrared light reflected by the eyeball of the user and collect the image of the eyeball of the user. The micro-integrated circuit is used for determining the rotational position of the user's eyeball according to the image of the user's eyeball.

本發明另一方面提供一種電子裝置,其包括本體以及設置於所述本體上的眼球追蹤結構,其中,所述眼球追蹤結構為上述的眼球追蹤結構。Another aspect of the present invention provides an electronic device, which includes a body and an eye-tracking structure disposed on the body, wherein the eye-tracking structure is the above-mentioned eye-tracking structure.

本發明再一方面提供一種智能眼鏡,其包括鏡架及設置於鏡架上的鏡片,其中,所述鏡片上裝設有上述的眼球追蹤結構。Another aspect of the present invention provides smart glasses, which include a frame and a lens disposed on the frame, wherein the above-mentioned eye tracking structure is mounted on the lens.

該眼球追蹤結構、應用該眼球追蹤結構的電子裝置及應用該該眼球追蹤結構的智能眼鏡中,由於設置在透明的基板上的紅外微型LED、微型光學感測元件、微型集成電路均為微米級的,眼球追蹤結構的光穿透率非常高。In the eye-tracking structure, the electronic device applying the eye-tracking structure, and the smart glasses applying the eye-tracking structure, the infrared micro-LEDs, micro-optical sensing elements, and micro-integrated circuits disposed on the transparent substrate are all micron-scale Yes, the light penetration rate of the eye tracking structure is very high.

圖1為本發明第一實施例的眼球追蹤結構10的平面示意圖。如圖1所示,眼球追蹤結構10包括透明的基板11、陣列排佈於所述基板11上的複數紅外微型發光二極管(light emitting diode, LED)12、陣列排佈於所述基板11上的複數微型光學感測元件13以及設置於所述基板11上的微型集成電路(micro integrated circuit,簡稱micro IC或μIC)14。所述紅外微型LED12與所述微型光學感測元件13電性連接所述微型集成電路14。FIG. 1 is a schematic plan view of an eye tracking structure 10 according to a first embodiment of the present invention. As shown in FIG. 1 , the eye tracking structure 10 includes a transparent substrate 11 , a plurality of infrared miniature light emitting diodes (LEDs) 12 arranged in an array on the substrate 11 , and an array of LEDs 12 arranged on the substrate 11 A plurality of micro optical sensing elements 13 and a micro integrated circuit (micro integrated circuit, micro IC or μIC for short) 14 disposed on the substrate 11 . The infrared micro LED 12 and the micro optical sensing element 13 are electrically connected to the micro integrated circuit 14 .

所述紅外微型LED12用於向使用者的眼球發射紅外光。所述微型光學感測元件13用於感測被使用者的眼球反射回的紅外光並採集使用者的眼球的圖像。所述微型集成電路14用於根據所述使用者的眼球的圖像確定使用者的眼球轉動的位置,進而實現眼球追蹤功能。The infrared micro-LED 12 is used to emit infrared light to the user's eyeball. The micro-optical sensing element 13 is used for sensing the infrared light reflected back by the user's eyeball and collecting the image of the user's eyeball. The micro-integrated circuit 14 is used for determining the position of the user's eyeball rotation according to the image of the user's eyeball, so as to realize the eye tracking function.

該眼球追蹤結構10中,紅外微型LED12、微型光學感測元件13、微型集成電路14均為微米級的,眼球追蹤結構10的光穿透率非常高。於一實施例中,所述微型集成電路14根據使用者的眼球轉動的位置,可以判斷出使用者的眼部活動,例如,眼跳動、注視、平滑跟蹤、眨眼等。In the eye-tracking structure 10 , the infrared micro-LED 12 , the micro-optical sensing element 13 , and the micro-integrated circuit 14 are all micron-level, and the light transmittance of the eye-tracking structure 10 is very high. In one embodiment, the micro integrated circuit 14 can determine the user's eye movement, such as eye movement, gaze, smooth tracking, blinking, etc., according to the position of the user's eyeball movement.

於一實施例中,定義使用者的眼睛被所述眼球追蹤結構追蹤10的區域為目標區域。其中,目標區域包括角膜中的一些或全部。目標區域還可以包括眼睛的一些或全部。In one embodiment, an area of the user's eye tracked by the eye tracking structure 10 is defined as a target area. Wherein, the target area includes some or all of the cornea. The target area may also include some or all of the eye.

於一實施例中,目標區域具有至少12mm的直徑(成人角膜的直徑大致為11.5mm)。於其他實施例中,目標區域可以顯著更大,如,大於等於15mm。In one embodiment, the target area has a diameter of at least 12 mm (the diameter of an adult cornea is approximately 11.5 mm). In other embodiments, the target area may be significantly larger, eg, greater than or equal to 15 mm.

於一實施例中,目標區域可以具有任何形狀,例如圓形、矩形、正方形、橢圓形等。In one embodiment, the target area may have any shape, such as circular, rectangular, square, oval, and the like.

於一實施例中,所述目標區域包括眼睛的鞏膜與眼睛的角膜之間的邊界區域,所述邊界區域可以由所述角膜過渡到所述鞏膜的位置限定。In one embodiment, the target area includes a boundary area between the sclera of the eye and the cornea of the eye, the boundary area may be defined by where the cornea transitions to the sclera.

於一實施例中,所述紅外微型LED12向所述目標區域內發射紅外光。所述微型光學感測元件13捕獲從所述目標區域反射回的紅外光的圖像。所述微型集成電路14根據從所述目標區域反射回的紅外光的圖像確定使用者的眼球轉動的位置。其中,從所述目標區域反射回的紅外光包括例如來自目標區域中眼睛部分(如,角膜、虹膜與或鞏膜)的紅外光的反射。於一實施例中,所述紅外微型LED12的尺寸範圍為1微米到100微米。所述微型光學感測元件13的尺寸範圍為1微米到100微米。In one embodiment, the infrared micro LEDs 12 emit infrared light into the target area. The miniature optical sensing element 13 captures an image of the infrared light reflected back from the target area. The micro integrated circuit 14 determines the position of the user's eyeball rotation based on the image of the infrared light reflected back from the target area. Therein, the infrared light reflected back from the target area includes, for example, the reflection of infrared light from parts of the eye (eg, the cornea, iris, and/or sclera) in the target area. In one embodiment, the size of the infrared micro LEDs 12 ranges from 1 micron to 100 microns. The size of the miniature optical sensing element 13 ranges from 1 micrometer to 100 micrometers.

於一實施例中,所述微型光學感測元件13為互補金屬氧化物半導體(Complementary Metal Oxide Semiconductor,CMOS)元件。所述微型集成電路14可經微轉印控制所述微型光學感測元件13及所述紅外微型LED12。微型集成電路14可包含CMOS效能及嵌入式存儲器(例如非揮發性存儲器)。In one embodiment, the miniature optical sensing element 13 is a Complementary Metal Oxide Semiconductor (CMOS) element. The micro-integrated circuit 14 can control the micro-optical sensing element 13 and the infrared micro-LED 12 via micro-transfer. The micro integrated circuit 14 may include CMOS performance and embedded memory (eg, non-volatile memory).

於一實施例中,紅外微型LED12、微型光學感測元件13藉由引線(圖未示)電性連接至微型集成電路14。其中,引線為透明的導電材料,例如銦錫氧化物(Indium Tin Oxide,ITO)。In one embodiment, the infrared micro LED 12 and the micro optical sensing element 13 are electrically connected to the micro integrated circuit 14 by wires (not shown). The lead wire is a transparent conductive material, such as indium tin oxide (Indium Tin Oxide, ITO).

於一實施例中,基板11的材質為透明的玻璃或透明的塑料。其中,若眼球追蹤結構10裝設於智能眼鏡的鏡片使用時,基板11的材質為具有一定彎曲特性且透明的玻璃或具有一定彎曲特性且透明的塑料。In one embodiment, the material of the substrate 11 is transparent glass or transparent plastic. Wherein, when the eye tracking structure 10 is installed on the lens of the smart glasses, the material of the substrate 11 is transparent glass with certain bending properties or transparent plastic with certain bending properties.

於一實施例中,該眼球追蹤結構10可應用於虛擬現實(virtual reality,VR)、增強現實(augmented reality,AR)、混合現實(mixed reality,MR)產品上。In one embodiment, the eye tracking structure 10 can be applied to virtual reality (VR), augmented reality (AR), and mixed reality (MR) products.

圖2為本發明第二實施例的眼球追蹤結構20的結構示意圖。第二實施例的眼球追蹤結構20與第一實施例的眼球追蹤結構10區別在於:眼球追蹤結構20還包括陣列排佈於所述基板11上的複數畫素微型LED15。紅外微型LED12及微型光學感測元件13與複數畫素微型LED15間隔設置。所述畫素微型LED15電性連接所述微型集成電路14,並在所述微型集成電路14的控制下進行圖像顯示。即,眼球追蹤結構20同時具有眼球追蹤功能與透明顯示功能。FIG. 2 is a schematic structural diagram of an eye tracking structure 20 according to a second embodiment of the present invention. The difference between the eye-tracking structure 20 of the second embodiment and the eye-tracking structure 10 of the first embodiment is that the eye-tracking structure 20 further includes a plurality of pixel micro LEDs 15 arranged on the substrate 11 in an array. The infrared micro LEDs 12 and the micro optical sensing elements 13 are spaced apart from the plurality of pixel micro LEDs 15 . The pixel micro-LED 15 is electrically connected to the micro-integrated circuit 14 , and performs image display under the control of the micro-integrated circuit 14 . That is, the eye tracking structure 20 has both the eye tracking function and the transparent display function.

於一實施例中,畫素微型LED15的尺寸範圍為1微米到100微米,其具有輝度高,低功耗,高可靠性,響應時間短等優點。In one embodiment, the size of the pixel micro-LED 15 ranges from 1 μm to 100 μm, which has the advantages of high brightness, low power consumption, high reliability, and short response time.

於一實施例中,紅外微型LED12、微型光學感測元件13、畫素微型LED15分別藉由引線16電性連接至微型集成電路14。其中,引線16為透明的導電材料,例如銦錫氧化物(Indium Tin Oxide,ITO)。In one embodiment, the infrared micro-LED 12 , the micro-optical sensing element 13 , and the pixel micro-LED 15 are electrically connected to the micro-integrated circuit 14 through wires 16 , respectively. The lead 16 is a transparent conductive material, such as indium tin oxide (Indium Tin Oxide, ITO).

於一實施例中,眼球追蹤結構20可包含複數所述微型集成電路14。每一微型集成電路14控制一個紅外微型LED12、一個微型光學感測元件13以及複數畫素微型LED15。In one embodiment, the eye tracking structure 20 may include a plurality of the micro integrated circuits 14 . Each micro integrated circuit 14 controls an infrared micro LED 12 , a micro optical sensing element 13 and a plurality of pixel micro LEDs 15 .

於一實施例中,畫素微型LED15包括發不同顏色光的複數所述畫素微型LED15,例如,發紅光的紅色微型LED152、發綠光的綠色微型LED154以及發藍光的藍色微型LED156,藉由混合紅綠藍三種基色光,眼球追蹤結構20發出白光,以實現顯示功能。In one embodiment, the pixel micro-LEDs 15 include a plurality of the pixel micro-LEDs 15 emitting different colors, such as red-emitting red micro-LEDs 152, green-emitting green micro-LEDs 154, and blue-emitting blue micro-LEDs 156, By mixing the three primary colors of red, green and blue, the eye tracking structure 20 emits white light to realize the display function.

眼球追蹤結構20中,每一微型集成電路14控制八個紅色微型LED152、八個綠色微型LED154以及八個藍色微型LED156,但不以此為限。In the eye tracking structure 20, each micro integrated circuit 14 controls eight red micro LEDs 152, eight green micro LEDs 154 and eight blue micro LEDs 156, but not limited thereto.

於一實施例中,畫素微型LED15的顯示可以為主動驅動的方式亦可以為被動驅動。In one embodiment, the display of the pixel micro-LEDs 15 can be either actively driven or passively driven.

圖3為本發明第三實施例的眼球追蹤結構30的複數畫素單元17的排佈示意圖。第三實施例的眼球追蹤結構30與第二實施例的眼球追蹤結構20的區別在於畫素微型LED15、紅外微型LED12及微型光學感測元件13的排佈不同。FIG. 3 is a schematic diagram of the arrangement of the plurality of pixel units 17 of the eye tracking structure 30 according to the third embodiment of the present invention. The difference between the eye tracking structure 30 of the third embodiment and the eye tracking structure 20 of the second embodiment lies in the arrangement of the pixel micro LEDs 15 , the infrared micro LEDs 12 and the micro optical sensing elements 13 .

眼球追蹤結構30中,所述眼球追蹤結構30定義有複數畫素單元17。每一個所述畫素單元17包括發不同顏色光的複數所述畫素微型LED15、一個所述紅外微型LED12及一個所述微型光學感測元件13。每一個所述畫素單元17中的畫素微型LED15包括一個紅色微型LED152、一個綠色微型LED154以及一個藍色微型LED156。In the eye tracking structure 30 , the eye tracking structure 30 defines a plurality of pixel units 17 . Each of the pixel units 17 includes a plurality of the pixel micro-LEDs 15 that emit light of different colors, one of the infrared micro-LEDs 12 and one of the micro-optical sensing elements 13 . The pixel micro LEDs 15 in each of the pixel units 17 include a red micro LED 152 , a green micro LED 154 and a blue micro LED 156 .

於其他實施例中,畫素單元17與所述紅外微型LED12、畫素單元17與所述微型光學感測元件13的設置不一定要一一對應。In other embodiments, the arrangement of the pixel unit 17 and the infrared micro LED 12 , the pixel unit 17 and the micro optical sensing element 13 do not necessarily have to be in a one-to-one correspondence.

如圖3所示,複數所述畫素單元17呈矩陣排佈。每一個所述畫素單元17中的所述紅色微型LED152、所述綠色微型LED154以及所述藍色微型LED156以及所述紅外微型LED12依次排佈成一行。複數所述畫素單元17的排佈為一行全部為所述微型光學感測元件13,另一行為一個所述紅外微型LED12、一個所述紅色微型LED152、一個所述綠色微型LED154以及一個所述藍色微型LED156交替週期性重複排佈。於其他實施例中,每一個畫素單元17中的發不同顏色光的複數所述畫素微型LED15與所述紅外微型LED12的排佈不限於圖3所示,還可根據需要進行調整,只要保證成一行排佈。As shown in FIG. 3 , the plurality of pixel units 17 are arranged in a matrix. The red micro LEDs 152 , the green micro LEDs 154 , the blue micro LEDs 156 and the infrared micro LEDs 12 in each pixel unit 17 are sequentially arranged in a row. The arrangement of the plurality of pixel units 17 is that one row is all the micro-optical sensing elements 13, and the other row is one of the infrared micro-LEDs 12, one of the red micro-LEDs 152, one of the green micro-LEDs 154, and one of the micro-LEDs 154. The blue micro LEDs 156 are arranged alternately and periodically. In other embodiments, the arrangement of the plurality of pixel micro-LEDs 15 and the infrared micro-LEDs 12 that emit light of different colors in each pixel unit 17 is not limited to that shown in FIG. Guaranteed to line up.

於另一實施例中,每一個所述畫素單元17中的所述紅色微型LED152、所述綠色微型LED154以及所述藍色微型LED156以及所述紅外微型LED12依次排佈成一列。複數所述畫素單元17的排佈為一列全部為所述微型光學感測元件13,另一列為一個所述紅色微型LED152、一個所述綠色微型LED154、一個所述藍色微型LED156以及一個所述紅外微型LED12交替週期性重複排佈。同理,每一個畫素單元17中的發不同顏色光的複數所述畫素微型LED15與所述紅外微型LED12的排佈不限於於此,還可根據需要進行調整,只要保證成一列排佈。In another embodiment, the red micro LEDs 152 , the green micro LEDs 154 , the blue micro LEDs 156 and the infrared micro LEDs 12 in each pixel unit 17 are sequentially arranged in a row. The arrangement of the plurality of pixel units 17 is that one row is all the micro optical sensing elements 13, and the other row is one of the red micro-LED 152, one of the green micro-LED 154, one of the blue micro-LED 156, and one of the micro LEDs. The infrared micro LEDs 12 are arranged alternately and periodically. Similarly, the arrangement of the plurality of pixel micro-LEDs 15 and the infrared micro-LEDs 12 in each pixel unit 17 that emit light of different colors is not limited to this, and can also be adjusted as needed, as long as they are arranged in a row .

圖4為本發明第四實施例的眼球追蹤結構40的複數畫素單元17的排佈示意圖。第四實施例的眼球追蹤結構40與第三實施例的眼球追蹤結構30的區別在於每一畫素單元17中,畫素微型LED15、紅外微型LED12及微型光學感測元件13的排佈不同。FIG. 4 is a schematic diagram of the arrangement of the plural pixel units 17 of the eye tracking structure 40 according to the fourth embodiment of the present invention. The difference between the eye tracking structure 40 of the fourth embodiment and the eye tracking structure 30 of the third embodiment is that in each pixel unit 17 , the arrangement of the pixel micro LEDs 15 , the infrared micro LEDs 12 and the micro optical sensing elements 13 is different.

如圖4所示,眼球追蹤結構40中,複數所述畫素單元17呈矩陣排佈。每一個所述畫素單元17中的所述紅色微型LED152、所述綠色微型LED154以及所述藍色微型LED156以及所述紅外微型LED12成2×2矩陣排佈。其中,每一個所述畫素單元17一行排佈一個紅色微型LED152與一個紅外微型LED12,另一行排佈一個藍色微型LED156與一個綠色微型LED154。複數所述畫素單元17的排佈為一行全部為所述微型光學感測元件13,另一行全部為所述2×2矩陣。As shown in FIG. 4 , in the eye tracking structure 40 , a plurality of the pixel units 17 are arranged in a matrix. The red micro LEDs 152 , the green micro LEDs 154 , the blue micro LEDs 156 and the infrared micro LEDs 12 in each pixel unit 17 are arranged in a 2×2 matrix. Wherein, one red micro LED 152 and one infrared micro LED 12 are arranged in one row of each pixel unit 17 , and one blue micro LED 156 and one green micro LED 154 are arranged in the other row. The arrangement of the plurality of pixel units 17 is that one row is all the micro optical sensing elements 13 , and the other row is all the 2×2 matrix.

於一實施例中,所述2×2矩陣包括的所述紅色微型LED152、所述綠色微型LED154以及所述藍色微型LED156以及所述紅外微型LED12共用一個驅動電路18,並在驅動電路18的驅動下發光。In one embodiment, the red micro-LED 152 , the green micro-LED 154 , the blue micro-LED 156 and the infrared micro-LED 12 included in the 2×2 matrix share a driving circuit 18 , and are connected to the driving circuit 18 . Driven to emit light.

於其他實施例中,發不同顏色光的複數所述畫素微型LED15與所述紅外微型LED12的排佈不限於圖4所示,還可以根據需要進行調整,只要保證成2×2矩陣排佈。另,於其他實施例中,所述每一個畫素單元17不限於包含上述三種顏色的畫素微型LED15,亦可包含發其他顏色光的畫素微型LED15。In other embodiments, the arrangement of the plurality of pixel micro LEDs 15 and the infrared micro LEDs 12 that emit light of different colors is not limited to that shown in FIG. . In addition, in other embodiments, each pixel unit 17 is not limited to include pixel micro-LEDs 15 of the above three colors, and may also include pixel micro-LEDs 15 that emit light of other colors.

圖5為本發明一實施例的電子裝置100的立體示意圖。該電子裝置100,其包括本體50以及設置於所述本體50上的眼球追蹤結構10(20、30、40)。FIG. 5 is a three-dimensional schematic diagram of an electronic device 100 according to an embodiment of the present invention. The electronic device 100 includes a body 50 and an eye-tracking structure 10 ( 20 , 30 , 40 ) disposed on the body 50 .

圖5示出的電子裝置100為智能眼鏡。該本體50包括鏡架52及設置於鏡架52上的鏡片54。鏡架52包括鏡框522、鏡腿524及連接部526。鏡腿524藉由連接部526連接至鏡框522,且可相對所述鏡框522折疊。The electronic device 100 shown in FIG. 5 is smart glasses. The body 50 includes a frame 52 and a lens 54 disposed on the frame 52 . The mirror frame 52 includes a mirror frame 522 , a mirror leg 524 and a connecting portion 526 . The temple 524 is connected to the frame 522 by the connecting portion 526 and can be folded relative to the frame 522 .

於一實施例中,智能眼鏡包括裝設於鏡片54上的眼球追蹤結構10,該智能眼鏡具有眼球追蹤功能。由於眼球追蹤結構10中,基板11為透明的,紅外微型LED12、微型光學感測元件13為微米級的,且陣列排佈於基板11上,使得眼球追蹤結構10具有高的光穿透率,當眼球追蹤結構10裝設於鏡片54上時,可使得鏡片54保持透明的,而不會遮擋使用者的視線。In one embodiment, the smart glasses include the eye tracking structure 10 mounted on the lens 54 , and the smart glasses have an eye tracking function. In the eye-tracking structure 10, the substrate 11 is transparent, the infrared micro-LED 12 and the micro-optical sensing element 13 are micron-scale, and the arrays are arranged on the substrate 11, so that the eye-tracking structure 10 has high light transmittance, When the eye tracking structure 10 is installed on the lens 54, the lens 54 can be kept transparent without blocking the user's sight.

於另一實施例中,智能眼鏡包括裝設於鏡片54上的眼球追蹤結構20(30、40),該智能眼鏡具有眼球追蹤與透明顯示雙功能。當畫素微型LED15發光時,智能眼鏡實現透明顯示的功能,當紅外微型LED12與微型光學感測元件13配合使用時,智能眼鏡實現眼球追蹤功能。In another embodiment, the smart glasses include the eye tracking structure 20 ( 30 , 40 ) mounted on the lens 54 , and the smart glasses have dual functions of eye tracking and transparent display. When the pixel micro LED 15 emits light, the smart glasses realize the function of transparent display, and when the infrared micro LED 12 and the micro optical sensing element 13 are used together, the smart glasses realize the eye tracking function.

由於眼球追蹤結構20(30、40)中,畫素微型LED15、微型光學感測元件13及紅外微型LED12整合在同一基板11上,即可兼具眼球追蹤與透明顯示雙功能。藉此,避免了在智能眼鏡中額外設置與眼球追蹤結構層疊的顯示器,降低了鏡片54的厚度。In the eye-tracking structure 20 ( 30 , 40 ), the pixel micro-LED 15 , the micro-optical sensing element 13 and the infrared micro-LED 12 are integrated on the same substrate 11 , so that the dual functions of eye-tracking and transparent display can be achieved. Thereby, it is avoided to additionally provide a display layered with the eye tracking structure in the smart glasses, and the thickness of the lens 54 is reduced.

同理,由於眼球追蹤結構20(30、40)中,基板11為透明的,畫素微型LED15、紅外微型LED12、微型光學感測元件13為微米級的,且陣列排佈於基板11上,使得眼球追蹤結構20(30、40)具有高的光穿透率,當眼球追蹤結構20(30、40)裝設於鏡片54上時,可使得鏡片54保持透明的,而不會遮擋使用者的視線。Similarly, in the eye tracking structure 20 ( 30 , 40 ), the substrate 11 is transparent, the pixel micro-LEDs 15 , the infrared micro-LEDs 12 , and the micro-optical sensing elements 13 are micron-scale, and the arrays are arranged on the substrate 11 . The eye tracking structure 20 ( 30 , 40 ) has high light transmittance, and when the eye tracking structure 20 ( 30 , 40 ) is installed on the lens 54 , the lens 54 can be kept transparent without blocking the user Sight.

於其他實施例中,電子裝置100還可以為非接觸式智能終端,藉由追蹤使用者的眼球,進行預設的操作。例如,電子裝置100可以為手機,藉由追蹤使用者的眼球的運動,以進行特定的畫面顯示。In other embodiments, the electronic device 100 may also be a non-contact smart terminal, which performs preset operations by tracking the user's eyeballs. For example, the electronic device 100 can be a mobile phone, and can display a specific screen by tracking the movement of the user's eyeballs.

以上實施方式僅用以說明本發明的技術方案而非限制,儘管參照較佳實施方式對本發明進行了詳細說明,本領域的普通技術人員應當理解,可以對本發明的技術方案進行修改或等同替換,而不脫離本發明技術方案的精神及範圍。The above embodiments are only used to illustrate the technical solutions of the present invention and not to limit them. Although the present invention has been described in detail with reference to the preferred embodiments, those of ordinary skill in the art should understand that the technical solutions of the present invention can be modified or equivalently replaced. without departing from the spirit and scope of the technical solutions of the present invention.

10、20、30、40:眼球追蹤結構 11:基板 12:紅外微型LED 13:微型光學感測元件 14:微型集成電路 15:畫素微型LED 152:紅色微型LED 154:綠色微型LED 156:藍色微型LED 16:引線 17:畫素單元 18:驅動電路 100:電子裝置 50:本體 52:鏡架 522:鏡框 524:鏡腿 526:連接部 54:鏡片10, 20, 30, 40: Eye Tracking Architecture 11: Substrate 12: Infrared Micro LED 13: Miniature Optical Sensing Elements 14: Micro integrated circuits 15: Pixel Micro LED 152: Red Micro LED 154: Green Micro LED 156: Blue Micro LED 16: Leads 17: Pixel unit 18: Drive circuit 100: Electronics 50: Ontology 52: Frames 522: Frame 524: temples 526: Connector 54: Lenses

圖1為本發明第一實施例的眼球追蹤結構的平面示意圖。FIG. 1 is a schematic plan view of an eye tracking structure according to a first embodiment of the present invention.

圖2為本發明第二實施例的眼球追蹤結構的結構示意圖。FIG. 2 is a schematic structural diagram of an eye tracking structure according to a second embodiment of the present invention.

圖3為本發明第三實施例的眼球追蹤結構的複數畫素單元的排佈示意圖。FIG. 3 is a schematic diagram of the arrangement of multiple pixel units of the eye tracking structure according to the third embodiment of the present invention.

圖4為本發明第四實施例的眼球追蹤結構的複數畫素單元的排佈示意圖。FIG. 4 is a schematic diagram of the arrangement of multiple pixel units of the eye tracking structure according to the fourth embodiment of the present invention.

圖5為本發明一實施例的電子裝置的立體示意圖。FIG. 5 is a schematic perspective view of an electronic device according to an embodiment of the present invention.

10:眼球追蹤結構10: Eye Tracking Architecture

11:基板11: Substrate

12:紅外微型LED12: Infrared Micro LED

13:微型光學感測元件13: Miniature Optical Sensing Elements

14:微型集成電路14: Micro integrated circuits

Claims (11)

一種眼球追蹤結構,其改良在於,包括: 透明的基板; 複數紅外微型LED,陣列排佈於所述基板上; 複數微型光學感測元件,陣列排佈於所述基板上;以及 微型集成電路,設置於所述基板上,所述紅外微型LED與所述微型光學感測元件電性連接所述微型集成電路; 其中,所述紅外微型LED用於向使用者的眼球發射紅外光,所述微型光學感測元件用於感測被使用者的眼球反射回的紅外光並採集使用者的眼球的圖像,所述微型集成電路用於根據所述使用者的眼球的圖像確定使用者的眼球轉動的位置。An eye-tracking structure is improved by including: transparent substrate; a plurality of infrared micro-LEDs arranged in an array on the substrate; a plurality of miniature optical sensing elements, arrayed on the substrate; and a micro-integrated circuit, disposed on the substrate, the infrared micro-LED and the micro-optical sensing element are electrically connected to the micro-integrated circuit; Wherein, the infrared micro LED is used to emit infrared light to the eyeball of the user, and the micro optical sensing element is used to sense the infrared light reflected by the eyeball of the user and collect the image of the eyeball of the user. The micro-integrated circuit is used for determining the rotational position of the user's eyeball according to the image of the user's eyeball. 如請求項1所述的眼球追蹤結構,其中,定義使用者的眼睛被所述眼球追蹤結構追蹤的區域為目標區域,所述目標區域包括眼睛的鞏膜與眼睛的角膜之間的邊界區域,所述邊界區域由所述眼睛的角膜過渡到所述眼睛的鞏膜的位置限定; 所述紅外微型LED用於向所述目標區域內發射紅外光,所述微型光學感測元件用於捕獲從所述目標區域反射回的紅外光的圖像,所述微型集成電路用於根據從所述目標區域反射回的紅外光的圖像確定使用者的眼球轉動的位置。The eye-tracking structure according to claim 1, wherein an area of the user's eye tracked by the eye-tracking structure is defined as a target area, and the target area includes a boundary area between the sclera of the eye and the cornea of the eye, so the boundary region is defined by the transition of the cornea of the eye to the sclera of the eye; The infrared micro LED is used to emit infrared light into the target area, the micro optical sensing element is used to capture an image of the infrared light reflected back from the target area, and the micro integrated circuit is used to The image of the infrared light reflected back from the target area determines the position of the user's eye movement. 如請求項2所述的眼球追蹤結構,其中,還包括陣列排佈於所述基板上的複數畫素微型LED,所述畫素微型LED電性連接所述微型集成電路,並在所述微型集成電路的控制下進行圖像顯示。The eye tracking structure according to claim 2, further comprising a plurality of pixel micro-LEDs arranged in an array on the substrate, the pixel micro-LEDs are electrically connected to the micro integrated circuit, and are connected to the micro-integrated circuit. Image display is performed under the control of the integrated circuit. 如請求項3所述的眼球追蹤結構,其中,所述眼球追蹤結構定義有複數畫素單元,每一個所述畫素單元包括發不同顏色光的複數所述畫素微型LED、一個所述紅外微型LED及一個所述微型光學感測元件。The eye-tracking structure of claim 3, wherein the eye-tracking structure defines a plurality of pixel units, each of the pixel units includes a plurality of the pixel micro-LEDs that emit light of different colors, one of the infrared Micro LED and one of the micro optical sensing elements. 如請求項4所述的眼球追蹤結構,其中,每一個所述畫素單元中的畫素微型LED包括發紅光的紅色微型LED、發綠光的綠色微型LED以及發藍光的藍色微型LED。The eye-tracking structure of claim 4, wherein the pixel micro-LEDs in each of the pixel units include red-emitting red micro-LEDs, green-emitting green micro-LEDs, and blue-emitting blue micro-LEDs . 如請求項5所述的眼球追蹤結構,其中,每一個所述畫素單元中的所述紅色微型LED、所述綠色微型LED以及所述藍色微型LED以及所述紅外微型LED成一行或成一列排佈。The eye-tracking structure according to claim 5, wherein the red micro-LED, the green micro-LED, the blue micro-LED and the infrared micro-LED in each pixel unit are in a row or group Arranged in a row. 如請求項6所述的眼球追蹤結構,其中,複數所述畫素單元呈矩陣排佈,複數所述畫素單元的排佈為一行全部為所述微型光學感測元件,另一行為一個所述紅色微型LED、一個所述綠色微型LED、一個所述藍色微型LED以及一個所述紅外微型LED交替週期性重複排佈。The eye-tracking structure according to claim 6, wherein the plurality of pixel units are arranged in a matrix, and the arrangement of the plurality of pixel units is such that one row is all the micro-optical sensing elements, and the other row is all the micro-optical sensing elements. The red micro-LEDs, the green micro-LEDs, the blue micro-LEDs, and the infrared micro-LEDs are alternately and periodically arranged. 如請求項5所述的眼球追蹤結構,其中,每一個所述畫素單元中的所述紅色微型LED、所述綠色微型LED以及所述藍色微型LED以及所述紅外微型LED成2×2矩陣排佈。The eye tracking structure according to claim 5, wherein the red micro-LED, the green micro-LED, the blue micro-LED and the infrared micro-LED in each pixel unit form a 2×2 Matrix arrangement. 如請求項8所述的眼球追蹤結構,其中,複數所述畫素單元呈矩陣排佈,複數所述畫素單元的排佈為一行全部為所述微型光學感測元件,另一行全部為所述2×2矩陣。The eye-tracking structure according to claim 8, wherein the plurality of pixel units are arranged in a matrix, and the arrangement of the plurality of pixel units is such that all the micro-optical sensing elements in one row and all the micro-optical sensing elements in the other row are arranged in a matrix. The 2×2 matrix described above. 一種電子裝置,包括本體以及設置於所述本體上的眼球追蹤結構,其中,所述眼球追蹤結構為如請求項1至9中任意一項所述的眼球追蹤結構。An electronic device includes a body and an eye-tracking structure disposed on the body, wherein the eye-tracking structure is the eye-tracking structure according to any one of claim 1 to 9. 一種智能眼鏡,包括鏡架及設置於鏡架上的鏡片,其中,所述鏡片上裝設有如請求項1至9中任意一項所述的眼球追蹤結構。A kind of smart glasses includes a frame and a lens arranged on the frame, wherein the eye tracking structure according to any one of claims 1 to 9 is mounted on the lens.
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